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牙种植体诱导的骨重塑及相关算法

Dental implant induced bone remodeling and associated algorithms.

作者信息

Lin Daniel, Li Qing, Li Wei, Swain Michael

机构信息

School of Aerospace, Mechanical and Mechatronic Engineering, The University of Sydney, NSW 2006, Australia.

出版信息

J Mech Behav Biomed Mater. 2009 Oct;2(5):410-32. doi: 10.1016/j.jmbbm.2008.11.007. Epub 2008 Dec 10.

Abstract

Numerous studies have shown that human bone has the ability to remodel itself to better adapt to its biomechanical environment by changing both its material properties and geometry. As a consequence of the rapid development and extensive applications of dental implants, the effect of bone remodeling on the success of a dental restorative surgery is becoming critical for implant design and pre-surgical assessment. This article provides an extensive review on the issues of mandibular and maxillary bone remodeling as a result of dental implantation. Following the success of remodeling-driven orthopedic design from the long bone community, substantial clinical/experimental data of implantation have been driving the development of corresponding remodeling laws and algorithms to various dental settings, of which it is believed to contain potential to significantly impact on futuristic dental implant design. In this paper, the published remodeling data is analyzed and different biomechanical remodeling stimuli are assessed. The established relationships between bone density and corresponding mechanical properties are outlined and a range of potential methods of predicting the mandible and maxilla remodeling are critically evaluated and compared. It is anticipated that this will provide a better understanding of implant-induced bone remodeling and help develop a new design framework for patient-specific dental implantation.

摘要

大量研究表明,人类骨骼能够通过改变其材料特性和几何形状来重塑自身,以更好地适应其生物力学环境。由于牙种植体的快速发展和广泛应用,骨重塑对牙修复手术成功的影响对于种植体设计和术前评估变得至关重要。本文对牙种植导致的下颌骨和上颌骨重塑问题进行了广泛综述。继长骨领域重塑驱动的骨科设计取得成功之后,大量种植的临床/实验数据推动了相应重塑规律和算法在各种牙科环境中的发展,人们认为这些规律和算法对未来的牙种植体设计具有显著影响的潜力。本文分析了已发表的重塑数据,并评估了不同的生物力学重塑刺激因素。概述了骨密度与相应力学性能之间已建立的关系,并对一系列预测下颌骨和上颌骨重塑的潜在方法进行了严格评估和比较。预计这将有助于更好地理解种植体诱导的骨重塑,并有助于为针对患者的牙种植开发新的设计框架。

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